Details
BUY GP50B60PD https://www.utsource.net/itm/p/12611238.html
| Parameter | Description | Value |
|---|---|---|
| Part Number | Unique identifier for the component | GP50B60PD |
| Type | Type of electronic component | Power Diode |
| Maximum Repetitive Peak Reverse Voltage (VRRM) | Maximum reverse voltage it can withstand without breakdown | 600 V |
| Maximum Average Rectified Forward Current (IF(AV)) | Continuous forward current at a specified temperature | 50 A |
| Peak Non-Repetitive Forward Surge Current (IFSM) | Maximum allowable surge current in a single pulse | 800 A |
| Junction Operating Temperature (TJ) | Range of temperatures over which the device can operate | -40掳C to +150掳C |
| Storage Temperature (TSTG) | Temperature range for storage | -55掳C to +175掳C |
| Total Device Dissipation (Ptot) | Maximum power dissipation | 250 W |
| Forward Voltage Drop (VF) | Voltage drop across the diode when conducting forward | 1.1 V at IF = 50A |
| Reverse Recovery Time (trr) | Time taken for the diode to recover from reverse bias | 350 ns |
| Package Type | Physical package type | TO-247 |
Instructions:
- Mounting and Handling: Ensure proper heat sinking to manage the thermal resistance. Handle with care to avoid damage to the leads and body.
- Soldering: Use a soldering temperature not exceeding 260掳C for no more than 10 seconds per operation. Allow adequate cooling between operations.
- Storage: Store in a dry, cool place within the specified storage temperature range.
- Electrical Connections: Ensure all connections are secure and capable of handling the rated currents and voltages.
- Operational Environment: Operate within the specified junction temperature range to ensure reliable performance.
- Surge Currents: Be cautious with applications involving high surge currents; ensure they do not exceed IFSM to prevent damage.
- Reverse Voltage Protection: Do not exceed the maximum repetitive peak reverse voltage to prevent breakdown.
- Dissipation Management: Monitor total device dissipation to stay within limits to avoid overheating and potential failure.
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